Potassium+perruthenate(VII)
Catalog Number:
(10349-068)
Supplier:
Bioss
Description:
Potassium channels are present in most mammalian cells, where they participate in a wide range of physiologic responses. The protein encoded by this gene is an integral membrane protein and inward-rectifier type potassium channel. It is activated by internal ATP and probably plays an important role in potassium homeostasis. The encoded protein has a greater tendency to allow potassium to flow into a cell rather than out of a cell. Mutations in this gene have been associated with antenatal Bartter syndrome, which is characterized by salt wasting, hypokalemic alkalosis, hypercalciuria, and low blood pressure. Multiple transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Jul 2008].
Supplier:
Ricca Chemical
Description:
Potassium Permanganate Standard, 89.1 mg/L, equivalent to 100 mg/L (ppm) Clâ‚‚, Ricca Chemical Company
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Catalog Number:
(77524-290)
Supplier:
AFG BIOSCIENCE LLC
Description:
Rat KCC1 (Potassium Chloride Cotransporters 1) ELISA Kit
Catalog Number:
(77528-576)
Supplier:
AFG BIOSCIENCE LLC
Description:
Human KCC1 (Potassium Chloride Cotransporters 1) ELISA Kit
Supplier:
Rockland Immunochemical
Description:
Sterile Plasma in Anticoagulant
Supplier:
Strem Chemicals Inc
Description:
CAS #: 16919-73-6. Size: 5g.
Catalog Number:
(10275-812)
Supplier:
Bioss
Description:
Voltage-gated K+ channels in the plasma membrane are important regulators of electrical signaling, controlling the repolarization and the frequency of action potentials in neurons, muscles and other excitable cells. KCNT2 is a 1,135 amino acid multi-pass transmembrane protein belonging to the potassium channel family (calcium-activated subfamily) of proteins. KCNT2 produces rapidly activating outward rectifier potassium currents in reponse to high intracellular sodium and chloride levels. Its channel activity is inhibited by ATP, inhalation anesthetics, such as isoflourane, and upon stimulation of G-protein coupled receptors, such as mAChR M1 and GluR-1. There are four isoforms of KCNT2 that are produced as a result of alternative splicing events.
Catalog Number:
(10275-814)
Supplier:
Bioss
Description:
Voltage-gated K+ channels in the plasma membrane are important regulators of electrical signaling, controlling the repolarization and the frequency of action potentials in neurons, muscles and other excitable cells. KCNT2 is a 1,135 amino acid multi-pass transmembrane protein belonging to the potassium channel family (calcium-activated subfamily) of proteins. KCNT2 produces rapidly activating outward rectifier potassium currents in reponse to high intracellular sodium and chloride levels. Its channel activity is inhibited by ATP, inhalation anesthetics, such as isoflourane, and upon stimulation of G-protein coupled receptors, such as mAChR M1 and GluR-1. There are four isoforms of KCNT2 that are produced as a result of alternative splicing events.
Catalog Number:
(10355-300)
Supplier:
Bioss
Description:
This is the catalytic component of the active enzyme, which catalyzes the hydrolysis of ATP coupled with the exchange of sodium and potassium ions across the plasma membrane. This action creates the electrochemical gradient of sodium and potassium ions, providing the energy for active transport of various nutrients.
Supplier:
Rockland Immunochemical
Description:
Sterile Plasma in Anticoagulant
Catalog Number:
(10336-594)
Supplier:
Bioss
Description:
Potassium channels are present in most mammalian cells, where they participate in a wide range of physiologic responses. The protein encoded by this gene is an integral membrane protein and inward-rectifier type potassium channel. The encoded protein, which has a greater tendency to allow potassium to flow into a cell rather than out of a cell, is controlled by G-proteins and is found associated with the sulfonylurea receptor SUR. Mutations in this gene are a cause of familial persistent hyperinsulinemic hypoglycemia of infancy (PHHI), an autosomal recessive disorder characterized by unregulated insulin secretion. Defects in this gene may also contribute to autosomal dominant non-insulin-dependent diabetes mellitus type II (NIDDM), transient neonatal diabetes mellitus type 3 (TNDM3), and permanent neonatal diabetes mellitus (PNDM). Multiple alternatively spliced transcript variants that encode different protein isoforms have been described for this gene. [provided by RefSeq]
Catalog Number:
(10168-558)
Supplier:
Genetex
Description:
Mouse monoclonal antibody [M17-P5-F11] to Sodium/Potassium ATPase beta
Supplier:
AMBEED, INC
Description:
2-(3-Bromopropoxy)tetrahydro-2H-pyran, Purity: 94% contains 0.5% potassium carbonate as stabilizer, CAS Number: 33821-94-2, Appearance: Form: liquid Colour: colourless - yellow, Storage: Inert atmosphere, Store in freezer, under -20 C, Size: 1g
Catalog Number:
(10136-232)
Supplier:
PERKINELMER U.S. LLC
Description:
The semi-demountable cell can be used either as a demountable cell or as a sealed cell for high-viscosity liquids or mull samples.
Catalog Number:
(10467-528)
Supplier:
Bioss
Description:
Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
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